Department of Nucleic Acids Bioengineering, Institute of Bioorganic Chemistry, Polish Academy of Sciences, Noskowskiego 12/14, 61-704, Poznan, Poland.
Sci Rep. 2019 Feb 21;9(1):2477. doi: 10.1038/s41598-018-36620-9.
siRNA molecules possess high potential as molecular tools and can be used as effective therapeutics in humans. One of the key steps in the action of these molecules is the choice of antisense strand by the RNA-induced silencing complex (RISC). To explain this process, we verified the theory which states that antisense strand selection is based on the thermodynamically less stable 5' end of siRNA. Based on the studies presented herein, we observed that for the tested siRNA duplexes, the difference in the thermodynamic stability of the terminal, penultimate and pre-penultimate pairs in the duplex siRNA is not the dominant factor in antisense strand selection. We found that both strands in each tested siRNA molecule are used as an antisense strand. The introduction of modified nucleotides, whose impact on the thermodynamic stability of siRNA duplexes was studied, results in changes in antisense strand selection by the RISC complex. The presence of a modified residue often caused predominant selection of only one antisense strand which is at variance with the theory of siRNA strand bias.
siRNA 分子具有作为分子工具的高潜力,并且可以在人类中用作有效的治疗剂。这些分子作用的关键步骤之一是 RNA 诱导沉默复合物 (RISC) 选择反义链。为了解释这一过程,我们验证了一种理论,即反义链选择是基于 siRNA 的热力学上不稳定的 5'端。基于本文提出的研究,我们观察到,对于测试的 siRNA 双链体,双链体 siRNA 中末端、倒数第二和倒数第三对的热力学稳定性差异不是反义链选择的主导因素。我们发现每个测试的 siRNA 分子的两条链都用作反义链。引入了经过修饰的核苷酸,研究了其对 siRNA 双链体热力学稳定性的影响,导致 RISC 复合物对反义链选择的改变。修饰残基的存在常常导致仅优先选择一条反义链,这与 siRNA 链偏向理论不一致。